YTE-17 inhibits colonic carcinogenesis by resetting antitumor immune response via Wnt5a/JNK mediated metabolic signaling

IF 6.1 1区 医学 Q1 PHARMACOLOGY & PHARMACY
Hua Sui, Wanli Deng, Qiong Chai, Bing Han, Yuli Zhang, Zhenzhen Wei, Zan Li, Ting Wang, Jiling Feng, Man Yuan, Qingfeng Tang, Hongxi Xu
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引用次数: 0

Abstract

The density and composition of lymphocytes infiltrating colon tumors serve as predictive factors for the clinical outcome of colon cancer. Our previous studies highlighted the potent anti-cancer properties of the principal compounds found in Garcinia yunnanensis (YTE-17), attributing these effects to the regulation of multiple signaling pathways. However, knowledge regarding the mechanism and effect of YTE-17 in the prevention of colorectal cancer is limited. In this study, we conducted isobaric tags for relative and absolute quantification (iTRAQ) analysis on intestinal epithelial cells (IECs) exposed YTE-17, both in vitro and vivo, revealing a significant inhibition of the Wnt5a (Wnt family member 5a)/c-Jun N-terminal kinase (JNK) signaling pathway. Subsequently, we elucidated the influence and mechanism of YTE-17 on the tumor microenvironment (TME), specifically focusing on macrophage-mediated T helper 17 (Th17) cell induction in a colitis-associated cancer (CAC) model with Wnt5a deletion. Additionally, we performed the single-cell RNA sequencing on the colonic tissue from the Wnt5a-deleted CAC model to characterize the composition, lineage, and functional status of immune mesenchymal cells during different stages of Colorectal Cancer (CRC) progression. Remarkably, our findings demonstrate a significant reduction in M2 macrophage polarization and Th17 phenotype upon treatment with YTE-17, leading to the restoration of regulatory T (Treg)/Th17 balance in azoxymethane (AOM)/dextran sodium sulfate (DSS) model. Furthermore, we also confirmed that YTE-17 effectively inhibited the glycolysis of Th17 cells in both direct and indirect co-culture systems with M2 macrophages. Notably, our study shed light on potential mechanisms linking the non-canonical Wnt5a/JNK signaling pathway and well-established canonical β-catenin oncogenic pathway in vivo. Specifically, we proposed that Wnt5a/JNK signaling activity in IECs promotes the development of cancer stem cells with β-catenin activity within the tumor microenvironment, involving macrophages and T cells. In summary, our study undergoes the potential of YTE-17 as a preventive strategy against CRC development by addressing the imbalance with the immune microenvironment, thereby mitigating the risk of malignancies.

Abstract Image

YTE-17通过Wnt5a/JNK介导的代谢信号,通过重置抗肿瘤免疫应答,抑制结肠癌的发生
浸润结肠肿瘤的淋巴细胞密度和组成可作为结肠癌临床预后的预测因素。我们之前的研究强调了Garcinia yunnanensis (YTE-17)中发现的主要化合物的有效抗癌特性,将这些作用归因于多种信号通路的调节。然而,关于YTE-17预防结直肠癌的机制和作用的认识有限。在本研究中,我们对体外和体内暴露于YTE-17的肠上皮细胞(IECs)进行了等压标签相对和绝对定量(iTRAQ)分析,发现对Wnt5a (Wnt家族成员5a)/c-Jun n -末端激酶(JNK)信号通路有显著抑制作用。随后,我们阐明了YTE-17对肿瘤微环境(TME)的影响及其机制,特别是在Wnt5a缺失的结肠炎相关癌症(CAC)模型中巨噬细胞介导的T辅助17 (Th17)细胞诱导。此外,我们对来自wnt5a缺失的CAC模型的结肠组织进行了单细胞RNA测序,以表征结直肠癌(CRC)进展不同阶段免疫间充质细胞的组成、谱系和功能状态。值得注意的是,我们的研究结果表明,在使用YTE-17处理后,M2巨噬细胞极化和Th17表型显著降低,导致偶氮氧甲烷(AOM)/葡聚糖硫酸钠(DSS)模型中调节性T (Treg)/Th17平衡恢复。此外,我们还证实了YTE-17在与M2巨噬细胞的直接和间接共培养系统中都能有效抑制Th17细胞的糖酵解。值得注意的是,我们的研究揭示了非典型Wnt5a/JNK信号通路与体内已建立的典型β-catenin致癌通路之间的潜在机制。具体而言,我们提出IECs中Wnt5a/JNK信号活性促进肿瘤干细胞的发展,肿瘤微环境中β-catenin活性涉及巨噬细胞和T细胞。总之,我们的研究通过解决与免疫微环境的不平衡,从而降低恶性肿瘤的风险,验证了YTE-17作为预防结直肠癌发展的策略的潜力。
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来源期刊
Journal of Pharmaceutical Analysis
Journal of Pharmaceutical Analysis Chemistry-Electrochemistry
CiteScore
16.20
自引率
2.30%
发文量
674
审稿时长
22 weeks
期刊介绍: The Journal of Pharmaceutical Analysis (JPA), established in 2011, serves as the official publication of Xi'an Jiaotong University. JPA is a monthly, peer-reviewed, open-access journal dedicated to disseminating noteworthy original research articles, review papers, short communications, news, research highlights, and editorials in the realm of Pharmacy Analysis. Encompassing a wide spectrum of topics, including Pharmaceutical Analysis, Analytical Techniques and Methods, Pharmacology, Metabolism, Drug Delivery, Cellular Imaging & Analysis, Natural Products, and Biosensing, JPA provides a comprehensive platform for scholarly discourse and innovation in the field.
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